In this paper, we optimize a Wireless Powered Communication (WPC) system including multiple pair of users, where transmitters employ single-antenna to transmit their information and power to their receivers with the help of one multiple-antennas Amplify-and-Forward (AF) relay or an active Intelligent Reflecting Surface (IRS). We propose a joint Time Switching (TS) scheme in which transmitters, receivers, and the relay/IRS are either in their energy or information transmission/reception modes. The transmitted multi-carrier unmodulated and modulated waveforms are used for Energy Harvesting (EH) and Information Decoding (ID) modes, respectively. In order to design an optimal fair system, we maximize the minimum rate of all pairs for both relay and IRS systems through a unified framework. This framework allows us to simultaneously design energy waveforms, find optimal relay/IRS amplification/reflection matrices, allocate powers for information waveforms, and allocate time durations for various phases. In addition, we take into account the non-linearity of the EH circuits in our problem. This problem turns out to be non-convex. Thus, we propose an iterative algorithm by using the Minorization-Maximization (MM) technique, which quickly converges to the optimal solution. Numerical examples show that the proposed method improves the performance of the multi-pair WPC relay/IRS system under various setups.
翻译:在本文中,我们优化了无线动力通信系统(WPC),包括多对用户,让发报机使用单安全网,在放大和前推进(AF)转发或主动智能反射表面(IRS)的多安全网帮助下,分别将信息和电源传送到接收器。我们提议了一个联合时间转换(TS)计划,让发报机、接收机和中继/IRS在其能量或信息传输/接收模式中找到最佳的中继/IRS增压/反射矩阵,为信息波变分配权力,并分配不同阶段的时间段。此外,我们考虑到能源收存(EH)和信息解析(ID)模式)和信息解析(ID)模式。为了设计一个最佳的公平系统,我们通过一个统一的框架,最大限度地实现中继系统和IR(IR)系统所有配对的最小比率。这个框架让我们同时设计能源波变形,找到最佳的中继器/IRS增压/反射矩阵,为信息波变形配置权力,并为各个阶段分配时间段段。此外,我们还考虑到在不精确的平流系统中采用不精确的电解法,我们提出一个不透明的方法,这样显示的电路变的系统,从而显示的平式系统将产生一个不同步的系统。